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A study on northern sea route navigation using ship handling simulation

  • Kim, Won Ouk (Korea Institute of Maritime and Fisheries Technology) ;
  • Youn, Dae Gwun (Division of International Maritime Transportation & Science, Mokpo National Maritime University) ;
  • Lee, Young Chan (Division of Marine Information Technology, Korea Maritime and Ocean University) ;
  • Han, Won Heui (Division of Marine Engineering, Mokpo National Maritime University) ;
  • Kim, Jong Su (Division of Marine System Engineering, Korea Maritime and Ocean University)
  • 투고 : 2015.11.10
  • 심사 : 2015.12.14
  • 발행 : 2015.12.31

초록

Recently, the viability of the Northern Sea Route has been receiving a remarkable amount of attention. Owing to global warming, glaciers in the Arctic Ocean have been melting rapidly, which has opened up navigation routes for ships with commercial as well as research purposes. At present, vessels can be economically operated along the Northern Sea Route four months of the year. However, studies have shown that the economical operating time may increase to six months by 2020 and year-round by 2030. Even though the conditions of the Northern Sea Route are extreme, the main reason for its use is that the route is shorter than the existing route using the Suez Canal, which provides an economic benefit. In addition, 25% of the world's oil reserves and 30% of its natural gas are stored in the coastal areas of the East Siberian Arctic region. Many factors are leading to the expectation of commercial navigation using the Northern Sea Route in the near future. To satisfy future demand, the International Maritime Organization established the Polar Code in order to ensure navigation safety in polar waters; this is expected to enter into force on January 1, 2017. According to the code, a ship needs to reduce its speed and analyze the ice for safe operation before entering into it. It is necessary to enter an ice field at a right angle to break the ice safely and efficiently. This study examined the operation along the course for safe navigation of the passage under several conditions. The results will provide guidelines for traffic officers who will operate ships in the Arctic Ocean.

키워드

참고문헌

  1. K. S. Choi, "Environment of the northern sea route and views of navigation," Journal of the Society of Naval Architects of Korea, vol 47, no 3. pp. 8-12, 2010 (in Korean).
  2. Korea Institute of Maritime and Fisheries Technology Report, "Final report of prepare to ice navigator training course," p. 11, 2013 (in Korean).
  3. H. K. Kang, K. P. Kim, J. S. Kang, D. H. Kim, and T. B. Ha, "The rules and winterization technology on ships intended for cold climate operation," Journal of the Korean Society of Marine Engineering, vol 35, no 6. pp. 721-731, 2011 (in Korean).
  4. J. S. Kang, K. P. Kim, H. K. Kang, and D. H. Kim, "Prevention technologies of environmental contamination and IMO action in arctic ice-covered waters," Proceeding of the Korean Society of Marine Engineers Conferenc,. pp. 237-239, 2011 (in Korean).
  5. Makarov Training Center, "Admiral makarov state maritime academy makarov training center ice navigation," pp. 195-197, 2014.
  6. Y. G. Kim, J. W. Oh, Y. C. Kim, and U. K. Kim, "A study on the propulsion shafting design of ice class vessel," Proceeding of the Korean Society of Marine Engineers Conference, pp. 183-183, 2012 (in Korean).
  7. Finnish Maritime Administration, "Finnish-swedish ice rules," 2002.
  8. Seamanship International Ltd, "The ice navigation manual," Chapter 3, 2010.
  9. Transas, Products & Solutions, http://www.transas.com/products/simulation/navigational-simulators/NTPROIce, Accessed December 14, 2015.